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Institution

Finisar

CompanySunnyvale, California, United States
About: Finisar is a company organization based out in Sunnyvale, California, United States. It is known for research contribution in the topics: Signal & Laser. The organization has 900 authors who have published 1523 publications receiving 22634 citations.


Papers
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Patent
26 Nov 2001
TL;DR: In this article, a single mode VCSEL (vertical cavity surface emitting laser) component is proposed, which consists of a semiconductor substrate having a lower surface and an upper surface, a bottom electrical contact disposed along the lower surface of the substrate, a lower mirror formed of n-type material and disposed upon the upper surface of a substrate, an active region (108) having a plurality of quantum wells disposed upon lower mirror portion, an upper mirror (110) formed from isotropic material, and an equipotential layer (112) disposed upon upper mirror portion
Abstract: A system and method for providing a single mode VCSEL (vertical cavity surface emitting laser) component (100) is disclosed, comprising a semiconductor substrate (102) having a lower surface and an upper surface, a bottom electrical contact (104) disposed along the lower surface of the substrate, a lower mirror (106) formed of n-type material and disposed upon the upper surface of the substrate, an active region (108) having a plurality of quantum wells disposed upon the lower mirror portion, an upper mirror (110) formed from isotropic material and disposed upon the active region, an equipotential layer (112) disposed upon the upper mirror portion, a first upper electrical contact (120) disposed upon the equipotential layer at a particular distance (124) from the first upper electrical contact, a first isolation region (126) disposed beneath the first upper contact and traversing the equipotential layer, the upper mirror, the active region, and the lower mirror, a second isolation region (128) disposed beneath the second upper contact and traversing the equipotential layer, the upper mirror, the active region, and the lower mirror, and an insulating layer (114, 116) interposed between the upper mirror and the equipotential layer and adapted to form therebetween an aperture (118) of smaller dimension than the particular distance between the first and second upper contacts.

38 citations

Patent
01 Feb 2006
TL;DR: In this article, a network system is provided with a diagnostic module and an analysis module, which may receive messages and perform any of a variety of network diagnostic functions using the messages it receives.
Abstract: A networking system is provided. The networking system may include a diagnostic module. The diagnostic module may perform any of a variety of network diagnostic functions. The diagnostic module may include an analysis module, which may receive messages and perform any of a variety of network diagnostic functions using the messages it receives. The diagnostic module may include a logic module, which may receive network messages having a first format or structure, may process the network messages it receives into network messages having a second format or structure, and may send the processed messages to the analysis module. The logic module may receive the network messages from an aggregated link.

38 citations

Patent
03 Jan 2005
TL;DR: In this paper, a transceiver module includes a receiver optical subassembly and an externally modulated laser (EML), which can be passively or actively cooled, as well as a conductive pathway extending through part of the platform.
Abstract: This disclosure is concerned with transceiver modules. In one example, a transceiver module includes a receiver optical subassembly, as well as a transmitter optical subassembly having a header assembly and an externally modulated laser (EML). The header assembly includes a base with first and second sides, as well as a platform attached to the base and having an inside portion near the first side of the base and an outside portion near the second side of the base. The platform of the header assembly further includes a conductive pathway extending through part of the platform. The EML is supported by the platform and electrically communicates with the conductive pathway of the platform. The EML can be passively or actively cooled.

38 citations

Proceedings ArticleDOI
Yasuhiro Matsui1, Thang Tien Pham1, Tsurugi Sudo1, Glen Carey1, Bruce Young1 
22 Mar 2015
TL;DR: Reliable Al-BH lasers at 1310 nm with a 29-GHz bandwidth were used to demonstrate a 2×56-Gb/s NRZ WDM link.
Abstract: Reliable Al-BH lasers at 1310 nm with a 29-GHz bandwidth were used to demonstrate a 2×56-Gb/s NRZ WDM link

37 citations

Patent
Tat Ming Teo1
04 Nov 2013
TL;DR: In this article, a pluggable ONU transceiver module comprises a top shell, a bottom shell configured to mate with the top shell to form a cavity, and a PCB disposed within the cavity.
Abstract: In one example embodiment, a pluggable ONU transceiver module comprises a top shell, a bottom shell configured to mate with the top shell to form a cavity, and a PCB disposed within the cavity. A plurality of pins are coupled to the PCB and are configured to be inserted into a protruding socket of a host device through the bottom shell. The protruding socket is mounted on a PCB of the host device. The pluggable ONU transceiver module further comprises one or more guiding features integrated with the bottom shell and configured to ensure that the pins are inserted correctly into the protruding socket, and means for positioning the top shell at a predetermined height above the PCB of the host device to allow coupling of the top shell to a heatsink of the host device.

37 citations


Authors

Showing all 900 results

NameH-indexPapersCitations
Yaron Silberberg8746228905
Ray T. Chen5488912078
Naresh R. Shanbhag493259202
N.A. Olsson381586360
Andrew C. Singer383026721
Jae-Hyun Ryou352605038
Joyce K. S. Poon331564184
Yasuhiro Matsui311432844
Ying Luo301052992
Lewis B. Aronson29742251
Thomas W. Mossberg291312611
Daniel Mahgerefteh25881830
Gil Cohen25722564
Christoph M. Greiner241001423
James A. Cox23721718
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20221
20213
202019
201929
201821
201743